Claims
- 1. A method of selectively optimizing a simulation model for predicting pharmacokinetic property of a compound in a mammalian system of interest, said method comprising the steps of:
(i) generating selectively optimized adjustment parameter values for two or more independent parameters of said simulation model utilizing a curve-fitting algorithm that simultaneously estimates the change required in said parameter values necessary for predicting a pharmacokinetic property of said compound in said mammalian system of interest when said simulation model is supplied with one or more input variables corresponding to a pharmacokinetic property of a compound test set derived from (a) a first data source corresponding to the mammalian system of interest, and (b) a second data source corresponding to a system other than the mammalian system of interest; (ii) selecting adjustment parameter values that permit correlation of one or more of the input variables from the first data source to one or more input variables from the second data source; (iii) repeating steps (i) and (ii) one or more times for one or more additional independent parameters of said simulation model until deviation of predictability using said first data source as input data into said simulation model from predictability using said second data source as input into said simulation model is minimized; and (iv) utilizing said selectively optimized adjustment parameters as constants for said independent parameters in said simulation model.
- 2. A computer-implemented method of generating a selectively optimized value for an adjustment parameter of a physiologic-based simulation model for predicting an in vivo property of a compound in a mammalian system of interest from an in vitro property of said compound, said method comprising:
(i) providing a computer having as operably linked computer-implemented components a curve-fitting algorithm and a physiologic-based simulation model of a mammalian system of interest, wherein said simulation model comprises one or more equations having an input variable for calculating as an output variable an in vivo property of a compound in said mammalian system as a function of time, and wherein one or more of said equations is modified by an adjustment parameter; (ii) using said computer and said curve-fitting algorithm, fitting with said simulation model a combination of in vitro data and in vivo data for different compounds of a compound test set, wherein said in vitro data and said in vivo data correspond to one or more input variables of said equations, and optionally one or more output variables of said equations, and wherein said fitting generates one or more best fit values for said adjustment parameter; and (iii) generating with said computer a selectively optimized value for said adjustment parameter of said simulation model by selecting one or more of said best fit values that, when assigned as an initial value to said adjustment parameter, permit said simulation model to predict an in vivo property of a compound in said mammalian system when in vitro data for said compound that corresponds to one or more input variables of said equations is utilized as input into said simulation model.
- 3. The method of claim 2, wherein said physiologic-based simulation model comprises a physiologic pharmacokinetic model of one or more anatomical segments of said mammalian system of interest.
- 4. The method of claim 3, wherein said physiologic pharmacokinetic model comprises differential equations for calculating the change in one or more physiological parameters of one or more of said anatomical segments and the movement and disposition of said compound in one or more of said anatomical segments as a function of time.
- 5. The method of claim 3, wherein said mammalian system of interest is selected from the group consisting of gastrointestinal tract, liver, heart, kidney, eye, nose, lung, skin and brain.
- 6. The method of claim 3, wherein said mammalian system of interest is human.
- 7. The method of claim 4, wherein one or more of said differential equations is for calculating a variable of a parameter corresponding to one or more in vivo properties of said compound selected from the group consisting of absorption, distribution, metabolism, elimination, and toxicity.
- 8. The method of claim 2, wherein said different compounds of said compound test set include compounds exhibiting a diverse range of in vivo properties in said mammalian system of interest.
- 9. The method of claim 8, wherein said in vivo properties are selected from the group consisting of permeability, solubility, dissolution, activity, metabolism, and toxicity.
- 10. The method of claim 2, wherein said in vivo data is derived from testing of a compound for an in vivo property in said mammalian system of interest.
- 11. The method of claim 2, wherein said in vitro data is derived from testing of a compound for an in vitro property in an assay that generates data selected from the group consisting of cell, tissue, physicochemical, structure-activity relationship (SAR) SAR, and quantitative structure-activity relationship (QSAR) QSAR data.
- 12. The method of claim 2, wherein said in vitro data and said in vivo data comprise a variable of a parameter corresponding to one or more in vitro and in vivo properties of said compound selected from the group consisting of absorption, distribution, metabolism, elimination, and toxicity.
- 13. The method of claim 2, wherein said fitting is simultaneous.
- 14. The method of claim 2, wherein said curve-fitting algorithm is a regression-based algorithm.
- 15. The method of claim 2, which further comprises reversibly storing said selectively optimized value for said adjustment parameter in a computer-implemented database.
- 16. The method of claim 2, which further comprises repeating steps (i) to (iii) one or more times for one or more additional adjustment parameters.
- 17. A computer-implemented method of generating a selectively optimized value for an adjustment parameter of a physiologic-based simulation model for predicting an in vivo property of a compound in a first mammalian system of interest from an in vivo property of said compound in a second mammalian system of interest, said method comprising:
(i) providing a computer having as operably linked computer-implemented components a curve-fitting algorithm and a physiologic-based simulation model of a first mammalian system of interest, wherein said simulation model comprises one or more equations having an input variable for calculating as an output variable an in vivo property of a compound in said first mammalian system as a function of time, and wherein one or more of said equations is modified by an adjustment parameter; (ii) using said computer and said curve-fitting algorithm, fitting with said simulation model a combination of in vivo data for different compounds of a compound test set derived from testing of said different compounds in said first mammalian system and in said second mammalian system, wherein said in vivo data corresponds to one or more input variables of said equations, and optionally one or more output variables of said equations, and wherein said fitting generates one or more best fit values for said adjustment parameter; and (iii) generating with said computer a selectively optimized adjustment value for said adjustment parameter of said simulation model by selecting one or more of said best fit values that, when assigned as an initial value to said adjustment parameter, permit said simulation model to predict an in vivo property of a compound in said first mammalian system when in vivo data for said compound that is derived from testing of said compound in said second mammalian system and that corresponds to one or more input variables of said equations is utilized as input into said simulation model.
- 18. A computer-implemented method of selectively optimizing a physiologic-based simulation model for predicting an in vivo property of a compound in a mammalian system of interest from an in vitro property of said compound, said method comprising:
(i) providing a computer having as operably linked computer-implemented components a curve-fitting algorithm and a physiologic-based simulation model of a mammalian system of interest, said simulation model having equations for independent parameters comprising physiological parameters of said mammalian system and physicochemical parameters of a compound in said mammalian system, said equations having input variables for calculating as an output variable an in vivo property of a compound in said mammalian system as a function of time, and wherein one or more of said independent parameters is modified by an adjustment parameter; (ii) using said computer and said curve-fitting algorithm, fitting with said simulation model a combination of in vitro data and in vivo data for different compounds of a compound test set, wherein said in vitro data and said in vivo data correspond to one or more input variables of said equations, and optionally one or more output variables of said equations, and wherein said fitting generates one or more best fit values for said adjustment parameter; and (iii) generating with said computer a selectively optimized value for said adjustment parameter for one or more independent parameters of said simulation model by selecting one or more of said best fit values that, when assigned as an initial value to said adjustment parameter, permit said simulation model to predict an in vivo property of a compound in said mammalian system when in vitro data for said compound that corresponds to one or more input variables of said equations is utilized as input into said simulation model; (iv) repeating steps (i) through (iii) one or more times for one or more additional independent parameters of said simulation model until deviation of predictability of said in vivo property of said compound in said mammalian system is minimized; and (v) utilizing said selectively optimized values for said adjustment parameters as constants for said independent parameters in said simulation model for predicting said in vivo property of a compound in said mammalian system of interest.
- 19. A computer-implemented method for selectively optimizing a physiologic pharmacokinetic simulation model for predicting a pharmacokinetic property of a compound in a mammalian system of interest, said method comprising the steps of:
(i) providing a computer having as operably linked computer-implemented components a curve-fitting algorithm and a physiologic pharmacokinetic simulation model of a mammalian system of interest, wherein said simulation model comprises differential equations having input variables for calculating as an output variable a pharmacokinetic property of a compound in said mammalian system as a function of time, and wherein said equations include one or more independent parameters modified by an adjustment parameter, (ii) using said computer and said curve-fitting algorithm, generating selectively optimized values for said adjustment parameter for one or more of said independent parameters by fitting with said simulation model a combination of data for different compounds of a compound test set, wherein said data correspond to one or more of said input variables, and optionally one or more of said output variables, and wherein said data is derived from (a) a first data source corresponding to the mammalian system of interest, and (b) a second data source corresponding to a system other than the mammalian system of interest; (iii) selecting one or more best fit values for said adjustment parameter that, when assigned as an initial value for said adjustment parameter, permit correlation of one or more of said input variables from said first data source to one or more of said input variables from said second data source when using either or both of said first data source and said second data source as input variables in said simulation model to predict said pharmacokinetic property; (iv) repeating steps (i) and (ii) one or more times for one or more additional independent parameters of said simulation model until deviation of predictability of said pharmacokinetic property when using either or both of said first data source and said second data source as input variables in said simulation model is minimized; and (v) utilizing said selectively optimized values as constants for said adjustment parameters in said simulation model for predicting said pharmacokinetic property of a compound in said mammalian system of interest.
- 20. A computer-implemented method of generating a selectively optimized adjustment parameter of a physiologic pharmacokinetic simulation model of a mammalian system of interest for predicting a pharmacokinetic property of a compound in said mammalian system from in vitro data, said method comprising:
(i) providing a computer having as a computer implemented physiologic pharmacokinetic simulation model of a mammalian system of interest, said simulation model comprising equations having one or more input variables for calculating as one or more output variables a pharmacokinetic property of a compound in said mammalian system as a function of time, wherein one or more of said equations is modified by an adjustment parameter; (ii) assigning an initial value to a selected adjustment parameter of said simulation model; (iii) fitting a combination of in vitro data and in vivo data for different compounds of a compound test set with said simulation model utilizing a curve fitting algorithm that estimates the change required in said initial value in order to change one or more of said output variables; (iv) selecting a best fit value for said selected adjustment parameter that, when assigned as an initial value to said selected adjustment parameter, permits said simulation model to predict said pharmacokinetic property of said compound when said input data comprises said in vitro data; (v) assigning said best fit value as a constant to said selected adjustment parameter so as to generate said selectively optimized adjustment parameter that modifies one or more of said equations; and (vi) optionally repeating steps (i) through (v) one or more times for one or more additional adjustment parameters.
- 21. The method of claim 20, wherein said in vitro data is obtained from testing of a compound in one or more assays that generate data selected from the group consisting of cell, tissue, structure-activity relationship (SAR), and quantitative structure-activity relationship (QSAR) data.
- 22. The method of claim 20, wherein said different compounds of a compound test set comprise compounds having diverse pharmacokinetic properties in said mammalian system of interest.
- 23. A computer-implemented method of generating a selectively optimized adjustment parameter of a physiologic pharmacokinetic simulation model of a mammalian system of interest that corresponds to a second species of mammal for predicting a pharmacokinetic property of a compound in said mammalian system from in vivo data obtained from a first species of mammal, said method comprising:
(i) providing a computer having as a computer implemented physiologic pharmacokinetic simulation model of a mammalian system of interest, said simulation model comprising equations having one or more input variables for calculating as one or more output variables a pharmacokinetic property of a compound in said mammalian system as a function of time, wherein one or more of said equations is modified by an adjustment parameter; (ii) assigning an initial value to a selected adjustment parameter of said simulation model; (iii) fitting a combination of in vivo data with said simulation model, said combination of in vivo data derived from testing of different compounds of a compound test set in said first species of mammal and said second species of mammal, and said fitting is performed utilizing a curve fitting algorithm that estimates the change required in said initial value in order to change one or more of said input variables, and optionally one or more of said output variables; (iv) selecting a best fit value for said selected adjustment parameter that, when assigned as an initial value to said selected adjustment parameter, permits said simulation model to predict said pharmacokinetic property of said compound when said input data comprises said in vivo data from said first species of mammal; (v) assigning said best fit value as a constant to said selected adjustment parameter so as to generate said selectively optimized adjustment parameter that modifies one or more of said equations; and (vi) optionally repeating steps (i) through (v) one or more times for one or more additional adjustment parameters.
- 24. The method of claim 23, wherein said different compounds of a compound test set comprise compounds having diverse pharmacokinetic properties in said mammalian system of interest.
- 25. The method of any one of claims 20 and 23, wherein said selectively optimized adjustment parameter is for one or more of fluid absorption, flux, permeability, transport mechanism, transfer rate, dissolution, solubility and segment surface area.
- 26. The method of any one of claims 20 and 23, which further comprises reversibly storing said constant for said selectively optimized adjustment parameter in a computer-implemented database.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is related to the following U.S. Provisional Applications Ser. No. 60/100,224 (Attorney Docket No. NAVI-010/00US), filed Sep. 14, 1998; No. 60,109,234 (Attorney Docket No. NAVI-010/01US) filed Nov. 18, 1998, No. 60/100,290 (Attorney Docket No. NAVI-009/00US), filed Sep. 14, 1998; and No. 60,109,232 (Attorney Docket No. NAVI-009/01US), filed Nov. 18, 1998.
Provisional Applications (4)
|
Number |
Date |
Country |
|
60100224 |
Sep 1998 |
US |
|
60100290 |
Sep 1998 |
US |
|
60109232 |
Nov 1998 |
US |
|
60109234 |
Nov 1998 |
US |